Xiao Yingying, Wang Mengzhu, Li Ye, Sun Zhicheng, Liu Zilong, He Liang, Liu Ruping
Beijing Engineering Research Center of Printed Electronics, Beijing Institute of Graphic Communication, Beijing 102600, China.
Division of Optics, National Institute of Metrology, Beijing 100029, China.
Micromachines (Basel). 2021 Nov 30;12(12):1505. doi: 10.3390/mi12121505.
All human activity is associated with the generation of electrical signals. These signals are collectively referred to as electrical physiology (EP) signals (e.g., electrocardiogram, electroencephalogram, electromyography, electrooculography, etc.), which can be recorded by electrodes. EP electrodes are not only widely used in the study of primary diseases and clinical practice, but also have potential applications in wearable electronics, human-computer interface, and intelligent robots. Various technologies are required to achieve such goals. Among these technologies, adhesion and stretchable electrode technology is a key component for rapid development of high-performance sensors. In last decade, remarkable efforts have been made in the development of flexible and high-adhesive EP recording systems and preparation technologies. Regarding these advancements, this review outlines the design strategies and related materials for flexible and adhesive EP electrodes, and briefly summarizes their related manufacturing techniques.
所有人类活动都与电信号的产生有关。这些信号统称为电生理(EP)信号(例如,心电图、脑电图、肌电图、眼电图等),可通过电极进行记录。EP电极不仅广泛应用于原发性疾病的研究和临床实践,还在可穿戴电子设备、人机界面和智能机器人领域具有潜在应用。实现这些目标需要多种技术。在这些技术中,粘附和可拉伸电极技术是高性能传感器快速发展的关键组成部分。在过去十年中,人们在开发柔性高粘附性EP记录系统和制备技术方面付出了巨大努力。关于这些进展,本综述概述了柔性粘附EP电极的设计策略和相关材料,并简要总结了其相关制造技术。